Development of quality control sample of GH4169 superalloy for spectrum analysis
WANG Minghai1, DU Jinhui2, LIN Fei3
1. China NIL Research Center for Proficiency Testing,Beijing 100081, China; 2. High Temperature Material Research Institute,Iron and Steel Research Institute Co., Ltd.,Beijing 100081, China; 3. NCS Testing Technology Co., Ltd.,Beijing 100081, China
Abstract:At present, there is no domestic GH4169 certified reference materials with high content of P and Nb for quality control in the testing process. The quality control samples of GH4169 superalloy with the highest content of P and Nb of 0.014% and 5.37% respectively were developed, which could meet the requirement of quality control in analysis process. 4 kinds of GH4169 raw materials produced in USA and China were selected to prepare quality control samples. The samples were determined by spark discharge atomic emission spectrometry, and the consistency of surface distribution and longitudinal distribution of each element in the raw material was investigated by t-test. The results showed that there was no segregation of each element。The homogeneity of the quality control samples was checked by variance analysis, and the results showed that the homogeneity of sample is well. The values and the expanded uncertainty of 12 elements,include Nb, P and Ni, Cr, Mo, Ti, etc. were determined by wet analysis method in 12 laboratories with rich experience in superalloy determination. The linearity between the quality control samples and the nickel-based certified reference materials was investigated by spark discharge atomic emission spectrometry and X-ray fluorescence spectrometry, and the results showed that there was a good linear relationship.
王明海, 杜金辉, 蔺菲. 光谱分析用GH4169高温合金质量控制样品的研制[J]. 冶金分析, 2022, 42(12): 83-90.
WANG Minghai, DU Jinhui, LIN Fei. Development of quality control sample of GH4169 superalloy for spectrum analysis. , 2022, 42(12): 83-90.
[1] 李振荣,田素贵,赵忠刚,等.微量元素P、B对GH4169合金组织与蠕变性能的影响[J].材料科学与工艺,2011,19(6):74-79. LI Zhenrong,TIAN Sugui,ZHAO Zhonggang,et al.Influence of trace phosphorus and boron on microstructure and creep behavior of GH4169 supperalloy[J].Marerials Science &Technology,2011,19(6):74-79. [2] 倪童伟,董建新,张麦仓,等.高铌高磷GH4169C和GH4169合金的组织稳定性[J].工程科学学报,2016,38(9):1278-1287. NI Tongwei,DONG Jianxin,ZHANG Maicang,et al.Microstructure stability of GH4169 alloys with high content of phosphorus and niobium[J].Chinese Journal of Engineering,2016,38(9):1278-1287. [3] 马军,申佳林,李茂明,等.化学成分对GH4169合金组织与力学性能的影响[J].金属热处理,2020,45(12):197-204. MA Jun,SHEN Jialin,LI Maoming,et al.Effect of chemical composition on microstructure and mechanical properties of GH4169 alloy[J].Heat Treatment of Metals,2020,45(12):197-204. [4] 国家市场监督管理总局,国家标准化管理委员会.GB/T 40303—2021 GH4169合金棒材通用技术条件[S].北京:中国标准出版社,2021. [5] 胡仁民,信欣.Nb含量对GH4169合金组织和拉伸性能的影响[J].宝钢技术,2020(2):32-35. HU Renmin,XIN Xin.Effects of Nb content variations on microstructure and tensile properties of GH4169 alloys[J].Baosteel Technology,2020(2):32-35. [6] 杜金辉,邓群,曲敬龙,等.GH4169合金盘锻件制备技术发展趋势[J].钢铁研究学报,2011,23(增刊2):130-133. DU Jinhui,DENG Qun,QU Jinglong,et al.Development trend of manufacturing technology of alloy GH4169 disk forging[J].Journal of Iron and Steel Research,2011,23(Supplement 2):130-133. [7] 中华人民共和国国家质量监督检验检疫总局,中国国家标准化管理委员会.GB/T 4889—2008数据的统计处理和解释 正态分布均值和方差的估计与检验[S].北京:中国标准出版社,2008. [8] 中华人民共和国国家质量监督检验检疫总局,中国国家标准化管理委员会.GB/T 6379.6—2009测量方法与结果的准确度(正确度与精密度) 第6部分:准确度值的实际应用[S].北京:中国标准出版社,2009. [9] 国家市场监督管理总局,国家标准化管理委员会.GB/T 223.63—2022 钢铁及合金 锰含量的测定 高碘酸钠(钾)分光光度法[S].北京:中国标准出版社,2022. [10] 中国合格评定国家认可委员会.CNAS—GL003:2018 能力验证样品均匀性和稳定性评价指南[S]. [11] 曹宏燕.分析测试统计方法和质量控制[M].北京:化学工业出版社,2017. [12] US-ASTM.ASTM E3047-16 Standard test method for analysis of nickel alloys by spark atomic emission spectrometry[S]. [13] 罗枫.电感耦合等离子体发射光谱(ICP-OES)法测定镍-铬基高温合金GB4133B中铝、铌、钛、铬、铁[J].中国无机分析化学,2020,10(4):59-62. LUO Feng.Determination of aluminium,niobium,titanium,chromium,iron in GH4133B Ni-Cr superalloys by ICP-OES[J].Chinese Journal of Inorganic Analytical Chemistry,2020,10(4):59-62. [14] 刘晓波,杨国武,侯艳霞,等.电感耦合等离子体原子发射光谱法分析复杂高温合金中痕量硅的干扰及校正方法探讨[J].冶金分析,2018,38(7):12-19. LIU Xiaobo,YANG Guowu,HOU Yanxia,et al.Discussion on interference and correction method during the analysis of trace silicon in complex superalloy by inductively coupled plasma-atomic emission spectrometry[J].Metallurgical Analysis,2018,38(7):12-19. [15] 汪磊,李燕昌,颜京,等.电感耦合等离子体原子发射光谱法测定镍基高温合金中铁[J].化学分析计量,2020,29(Z1):51-55. WANG Lei,LI Yanchang,YAN Jing,et al.Determination of Fe in nickel-base superalloy by ICP-AES[J].Chemical Analysis and Meterage,2020,29(Z1):51-55. [16] 任惠萍,杨艳,张馨文,等.ICP-AES标准加入法测定高温合金(GH2132、GH3600、GH4169)中P元素含量[J].甘肃科技(Gansu Science and Technology),2020,36(8):63-66. [17] 中华人民共和国国家质量监督检验检疫总局,中国国家标准化管理委员会.GB/T 15000.3—2008标准样品工作导则(3) 标准样品 定值的一般原则和统计方法[S].北京:中国标准出版社,2008. [18] US-ASTM.ASTM E2594-20 Standard test method for analysis of nickel alloys by inductively coupled plasma atomic emission spectrometry (Performance-Based)[S]. [19] 中华人民共和国国家质量监督检验检疫总局,中国国家标准化管理委员会.GB/T 223.65—2012 钢铁及合金 钴含量的测定 火焰原子吸收光谱法[S].北京:中国标准出版社,2012. [20] 国防科学技术工业委员会.HB 5220.10—2008高温合金化学分析方法 第10部分:硅钼蓝吸光光度法测定硅含量[S].北京:中国航空技术研究所,2008. [21] 国防科学技术工业委员会.HB 5220.22—2008高温合金化学分析方法 第22部分:硫氰酸盐吸光光度法测定钼含量[S].北京:中国航空技术研究所,2008. [22] 国防科学技术工业委员会.HB 5220.15—2008高温合金化学分析方法 第15部分:过硫酸铵氧化-亚铁容量法测定铬含量[S].北京:中国航空技术研究所,2008. [23] 国防科学技术工业委员会.HB5220.29—2008 高温合金化学分析方法 第29部分:重铬酸钾容量法测定铁含量[S].北京:中国航空技术研究所,2008. [24] 国防科学技术工业委员会.HB 5220.23—2008高温合金化学分析方法 第23部分:丁二酮肟-EDTA容量法测定镍含量[S].北京:中国航空技术研究所,2008.